Accuracy of model-based tracking of knee kinematics and cartilage contact measured by dynamic volumetric MRI

作者:Kaiser Jarred; Monawer Arezu; Chaudhary Rajeev; Johnson Kevin M; Wieben Oliver; Kijowski Richard; Thelen Darryl G*
来源:Medical Engineering & Physics, 2016, 38(10): 1131-1135.
DOI:10.1016/j.medengphy.2016.06.016

摘要

The purpose of this study was to determine the accuracy of knee kinematics and cartilage contact measured by volumetric dynamic MR1. A motor-actuated phantom drove femoral and tibial bone segments through cyclic 3D motion patterns. Volumetric images were continuously acquired using a 3D radially undersampled cine spoiled gradient echo sequence (SPGR-VIPR). Image data was binned based on position measured via a MRI-compatible rotary encoder. High-resolution static images were segmented to create bone models. Model-based tracking was performed by optimally registering the bone models to the volumetric images at each frame of the SPGR-VIPR series. 3D tibiofemoral translations and orientations were reconstructed, and compared to kinematics obtained by tracking fiducial markers. Imaging was repeated on a healthy subject who performed cyclic knee flexion-extension. Cartilage contact for the subject was assessed by measuring the overlap between articular cartilage surfaces. Model-based tracking was able to track tibiofemoral angles and translations with precisions less than 0.8 degrees and 0.5 mm. These precisions resulted in an uncertainty of less than 0.5 mm in cartilage contact location. Dynamic SPGR-VIPR imaging can accurately assess in vivo knee kinematics and cartilage contact during voluntary knee motion performed in a MRI scanner. This technology could facilitate the quantitative investigation of links between joint mechanics and the development of osteoarthritis.

  • 出版日期2016-10